SELECTIVELY AVAILABLE INFORMATION STORAGE AND COMMUNICATIONS SYSTEM
    52.
    发明申请
    SELECTIVELY AVAILABLE INFORMATION STORAGE AND COMMUNICATIONS SYSTEM 审中-公开
    可选择的信息存储和通信系统

    公开(公告)号:US20150130613A1

    公开(公告)日:2015-05-14

    申请号:US14075523

    申请日:2013-11-08

    Applicant: Scott Fullam

    Inventor: Scott Fullam

    Abstract: Embodiments of the present application relate generally to electronic hardware, computer software, wireless communications, network communications, wearable, hand held, and portable computing devices for facilitating communication of information. A wearable personal emergency event transponder includes a processor, data storage, a sensor system, and a communications interface. The transponder processes signals from the sensor system using algorithms included in the data storage and determines if an event related to a medical emergency has occurred to a user wearing the transponder. Upon detecting one or more events, the transponder may selectively communicate one or more datum from the data storage including user specific emergency medical data, user contact data, system data, or some combination of those data. The communication may be by a radio configured to transmit the datum at a low RF power sufficient for near field communication with an external device and/or by a hardwired communications link (e.g., USB).

    Abstract translation: 本申请的实施例一般涉及电子硬件,计算机软件,无线通信,网络通信,可佩戴的,手持的和便携式计算设备,以便于信息的通信。 可穿戴式个人紧急事件应答器包括处理器,数据存储器,传感器系统和通信接口。 应答器使用包括在数据存储器中的算法来处理来自传感器系统的信号,并且确定与戴尔应答器的用户是否发生了与医疗紧急事件相关的事件。 在检测到一个或多个事件时,应答器可以选择性地从数据存储器传送一个或多个数据,包括用户特定的紧急医疗数据,用户联系人数据,系统数据或那些数据的某些组合。 该通信可以是被配置为以足够用于与外部设备和/或硬连线通信链路(例如,USB)进行近场通信的低RF功率发送数据的无线电设备。

    MEDIA DEVICES CONFIGURED TO INTERFACE WITH INFORMATION APPLIANCES
    54.
    发明申请
    MEDIA DEVICES CONFIGURED TO INTERFACE WITH INFORMATION APPLIANCES 审中-公开
    媒体设备配置接口与信息设备

    公开(公告)号:US20140347565A1

    公开(公告)日:2014-11-27

    申请号:US13898472

    申请日:2013-05-21

    Abstract: Embodiments relate generally to electrical/electronic hardware, computer software, wired and wireless network communications, portable, wearable, and stationary media devices. RF transceivers and/or audio system in each media device may be used to wirelessly communicate between media devices and allow configuration and other data to be wirelessly transmitted from one media device to another media device. The proximity detection system may be configured to detect a presence of a user or multiple users and upon detecting presence, access content on a user device, and record the content while also playing back the content on the media device. One or more user devices in proximity of the media device post detection may wirelessly communicate with the media device and the media device may orchestrate handling of content from those devices or from a wirelessly accessible location such as the Cloud or Internet.

    Abstract translation: 实施例一般涉及电气/电子硬件,计算机软件,有线和无线网络通信,便携式,可佩戴和固定的媒体设备。 每个媒体设备中的RF收发器和/或音频系统可用于在媒体设备之间进行无线通信,并允许配置和其他数据从一个媒体设备无线传输到另一个媒体设备。 接近检测系统可以被配置为检测用户或多个用户的存在,并且一旦检测到存在,访问用户设备上的内容,并且在还播放媒体设备上的内容的同时记录内容。 在媒体设备后检测附近的一个或多个用户设备可以与媒体设备进行无线通信,并且媒体设备可以从这些设备或从诸如云或因特网之类的无线可访问位置来协调处理内容。

    EAR-RELATED DEVICES IMPLEMENTING SENSORS TO ACQUIRE PHYSIOLOGICAL CHARACTERISTICS
    57.
    发明申请
    EAR-RELATED DEVICES IMPLEMENTING SENSORS TO ACQUIRE PHYSIOLOGICAL CHARACTERISTICS 审中-公开
    相关设备实施传感器获取生理特征

    公开(公告)号:US20140288447A1

    公开(公告)日:2014-09-25

    申请号:US14209690

    申请日:2014-03-13

    Abstract: Various embodiments relate generally to electrical and electronic hardware, computer software, wired and wireless network communications, and wearable computing and audio devices for monitoring health and wellness. More specifically, disclosed are an apparatus and a method for processing signals representing physiological characteristics sensed from tissue at or adjacent an ear of an organism. In one or more embodiments, a wearable device includes one or more sensor terminals, one or more physiological sensors configured to sense one or more signals originating at the one or more sensor terminals. At least one sensor terminal includes a pressure-sensitive terminal configured to detect a pressure exerted by a portion of tissue of an organism and generate a pressure signal representing a value of the pressure. Further, the wearable device can include a processor configured to cause generation of data representing a physiological characteristic of the organism based on the pressure signal.

    Abstract translation: 各种实施例通常涉及电气和电子硬件,计算机软件,有线和无线网络通信以及用于监测健康和健康的可穿戴计算和音频设备。 更具体地,公开了一种用于处理表示从生物体的耳朵处或邻近的组织感测的生理特征的信号的装置和方法。 在一个或多个实施例中,可佩戴装置包括一个或多个传感器端子,一个或多个生理传感器,其被配置为感测源自一个或多个传感器端子的一个或多个信号。 至少一个传感器端子包括压敏端子,其被配置为检测由生物体的组织的一部分施加的压力,并产生表示压力值的压力信号。 此外,可穿戴装置可以包括处理器,其被配置为基于压力信号产生表示生物体的生理特性的数据。

    PIEZOELECTRIC HEART RATE SENSING FOR WEARABLE DEVICES OR MOBILE DEVICES
    60.
    发明申请
    PIEZOELECTRIC HEART RATE SENSING FOR WEARABLE DEVICES OR MOBILE DEVICES 审中-公开
    用于可穿戴设备或移动设备的压电心率感测

    公开(公告)号:US20140128753A1

    公开(公告)日:2014-05-08

    申请号:US13672398

    申请日:2012-11-08

    Abstract: Embodiments relate generally to electrical and electronic hardware, computer software, wired and wireless network communications, and wearable computing devices for sensing health and wellness-related information. More specifically, disclosed is a physiological sensor using, for example, acoustic signal energy to determine physiological characteristics, such as a heart rate, the physiological sensor being disposed in a wearable device (or carried device). In one embodiment, a physiological signal generator is disposed substantially in a wearable housing. At least a portion of a skin surface microphone (“SSM”) including a piezoelectric sensor is configured to receive acoustic signals. The wearable housing is configured to position the SSM to receive an acoustic signal originating from human tissue. The physiological signal generator is configured to receive a piezoelectric signal based on an acoustic signal, and to generate a physiological signal including data representing a heartbeat or heart rate.

    Abstract translation: 实施例一般涉及电气和电子硬件,计算机软件,有线和无线网络通信以及用于感测健康和健康相关信息的可穿戴计算设备。 更具体地,公开了一种生理传感器,其使用例如声信号能量来确定生理特征,例如心率,生理传感器被布置在可穿戴设备(或被携带设备)中。 在一个实施例中,生理信号发生器基本上设置在可穿戴的外壳中。 包括压电传感器的皮肤表面麦克风(“SSM”)的至少一部分被配置为接收声信号。 可穿戴外壳被配置成定位SSM以接收源自人体组织的声学信号。 生理信号发生器被配置为基于声信号接收压电信号,并且生成包括表示心跳或心率的数据的生理信号。

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